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An integrated architecture for the ITER RH control system

机译:ITER RH控制系统的集成架构

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The ITER remote handling (RH) system has been divided into 7 major equipment system procurements that deliver complete systems (operator interfaces, equipment controllers, and equipment) according to task oriented functional specifications. Each equipment system itself is an assembly of transporters, power manipulators, telemanipulators, vehicular systems, cameras, and tooling with a need for controllers and operator interfaces. From an operational perspective, the ITER RH systems are bound together by common control rooms, operations team, and maintenance team; and will need to achieve, to a varying degree, synchronization of operations, co-operation on tasks, hand-over of components, and sharing of data and resources. The separately procured RH systems must, therefore, be integrated to form a unified RH system for operation from the RH control rooms. The RH system will contain a heterogeneous mix of specially developed RH systems and off-the-shelf RH equipment and parts. The ITER Organization approach is to define a control system architecture that supports interoperable heterogeneous modules, and to specify a standard set of modules for each system to implement within this architecture. Compatibility with standard parts for selected modules is required to limit the complexity for operations and maintenance. A key requirement for integrating the control system modules is interoperability, and no module should have dependencies on the implementation details of other modules. The RH system is one of the ITER Plant systems that are integrated and coordinated through the hierarchical structure of the ITER CODAC system. It is distinguished from other Plant systems by the man-in-the-loop nature of RH operations and the need for control rooms at a level below the main control room. The RH control system architecture has been designed to also support the central monitoring and coordination of the RH activities.
机译:ITER远程处理(RH)系统已分为7个主要的设备系统采购项目,它们根据任务导向的功能规格交付了完整的系统(操作员界面,设备控制器和设备)。每个设备系统本身都是运输机,动力操纵器,远程操纵器,车辆系统,照相机和需要控制器和操作员界面的工具的组件。从操作的角度来看,ITER RH系统由公共控制室,操作团队和维护团队捆绑在一起;并且将需要在不同程度上实现操作同步,任务协作,组件移交以及数据和资源共享。因此,必须将单独购买的RH系统集成为一个统一的RH系统,以便从RH控制室进行操作。 RH系统将包含专门开发的RH系统和现成的RH设备和零件的异构混合物。 ITER组织的方法是定义一个支持可互操作的异构模块的控制系统架构,并为在该架构内实现的每个系统指定一组标准的模块。需要与所选模块的标准零件兼容,以限制操作和维护的复杂性。集成控制系统模块的关键要求是互操作性,并且任何模块都不应依赖于其他模块的实现细节。 RH系统是ITER Plant系统之一,通过ITER CODAC系统的层次结构进行集成和协调。它与其他工厂系统的不同之处在于,RH操作具有“人为循环”的特性,并且需要在主控制室以下的位置使用控制室。 RH控制系统架构的设计还可以支持RH活动的集中监视和协调。

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